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Ram Reifen

Publications and source records attributed to Ram Reifen.

23 records · Page 2Linked to original sources

Vitamin A as an anti-inflammatory agent.

Vitamin A is necessary for normal differentiation of epithelial tissues, the visual process and reproduction, and is vital for the optimal maintenance and functioning of the innate and adaptive immune system. Vitamin A deficiency is one of the most profuse nutritional deficiencies worldwide. It is associated with increased susceptibility to infectious diseases in both man and animal models. Vitamin A also has a role as an anti-inflammatory agent. Supplementation with vitamin A has been found to be beneficial in a number of inflammatory conditions, including skin disorders such as acne vulgaris, broncho-pulmonary dysplasia and some forms of precancerous and cancer states. The present review suggests that vitamin A deficiency induces inflammation and aggravates existing inflammatory states. Supplementation with vitamin A in selected cases could ameliorate inflammation. The two main mechanisms which appear to be involved in the prevention of disease are the effects of vitamin A on the immune system and the effect on epithelial integrity.

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Lycopene inhibits proliferation and enhances gap-junction communication of KB-1 human oral tumor cells.

Cell-cell interaction via gap junctions is considered to be a key factor in tissue homeostasis, and its alteration is associated with the neoplastic phenotype. Experimental and epidemiologic data suggest that carotenoids, particularly lycopene and beta-carotene, can reduce the risk of certain cancers. The aim of this study was to assess whether lycopene and beta-carotene interfere at some stage with the carcinogenic processes in human cancer cells derived from the oral cavity. KB-1 cells, originating from a human oral cavity tumor, were incubated with different concentrations of lycopene or beta-carotene delivered via the cell culture media from stock solutions in tetrahydrofuran. Lycopene strongly and dose dependently inhibited proliferation of KB-1 human oral tumor cells. beta-Carotene was a far less effective growth inhibitor. Lycopene (3 and 7 micro mol/L) significantly upregulated both the transcription (P < 0.005) and the expression (P < 0.05) of connexin 43, a key protein in the formation of gap-junctional communication. beta-Carotene (3 micro mol/L) tended to upregulate connexin 43 expression (P = 0.07) and significantly affected transcription of connexin 43 at 7 micro mol/L (P < 0.05). Gap-junctional communication measured by scrape-loading dye transfer and electron microscopy showed that lycopene enhanced gap-junctional communication between the cancer cells, whereas beta-carotene was less effective in this regard. The pattern of cellular uptake and incorporation into cancer KB-1 cells differed significantly between the carotenoids. beta-Carotene was avidly and rapidly incorporated into KB-1 cells, whereas lycopene uptake into the cells took place after longer incubation periods and only at the highest concentrations. The results of the present study further support the hypothesis that carotenoids in general, and lycopene in particular, may be effective anticarcinogenic agents in oral carcinogenesis.

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DNA microarray technology reveals similar gene expression patterns in rats with vitamin a deficiency and chemically induced colitis.

Previous studies suggest that vitamin A deficiency may induce or intensify inflammatory changes in the rat gastrointestinal system. The present study was designed to compare the expression profiles of rat models of vitamin A deficiency and induced colitis. cDNA-microarray technology was used to determine the genes involved in the inflammatory processes in the two models. mRNA was extracted from colons of rats that were vitamin A deficient, vitamin A supplemented (control), or had 2,4,6-trinitrobenzenesulfonic acid (TNBS)-induced colitis, reverse-transcribed into fluorescence-labeled cDNA and hybridized onto microarrays containing a duplicate set of 1152 cDNAs, derived mainly from the colon carcinoma cell line Caco-2. Differential gene expression was detected in vitamin A deficiency and in TNBS-induced colitis vs. control. beta-Actin, translation initiation factor A4 and translation elongation factor 1, ornithine decarboxylase (ODC) and keratin 19 were markedly down-regulated, whereas spermidine/spermine N1-acetyltransferase (SSAT) and polyubiquitin (UbC) were up-regulated in both vitamin A-deficient rats and those with TNBS-induced colitis. The strong association between the differential gene expression in the two animal models, compared with the control, suggests that deficiency of vitamin A causes inflammatory changes in the rat colon that are similar to processes occurring in colitis. Further investigation is required to elucidate the importance of each of the regulated genes to the pathology of colitis and vitamin A inadequacy.

Animals↗

Repeated allergen challenge in rats increases vitamin A consumption.

BACKGROUND: Vitamin A plays an important role in airways epithelial repair and differentiation. Allergen challenge induces epithelial damage and shedding, which cause an increase in repair activity. OBJECTIVE: To examine whether repeated allergen challenges could increase vitamin A consumption in a rat model. DESIGN: Allergic bronchitis was induced in 12 animals, and 12 rats remained naive. After 14 days, repeated allergen inhalation challenges were performed in the sensitized rats for 2 weeks. On day 16, allergen challenge was performed and bronchoconstriction was measured in all 24 rats. On day 30, all rats were killed. BAL was performed and ex vivo tumor necrosis factor (TNF)-alpha and nitric oxide (NO) production was measured in the lavage cells. Liver, lung tissue, and serum were collected for measurement of vitamin A concentration. RESULTS: The study rats showed severe bronchoconstriction after allergen challenge compared to the naive rats, and ex vivo TNF-alpha and NO production was significantly higher in the sensitized rats. Serum and lung concentrations of vitamin A were not different among the two groups. However, the vitamin A liver concentration in the study rats was significantly lower compared to the naive rats. CONCLUSIONS: We conclude that vitamin A utilization is increased during repeated allergen challenge and allergic bronchitis, most probably due to increased demand for epithelial repair.

Allergens↗

ROS-production-mediated activation of AP-1 but not NFkappaB inhibits glutamate-induced HT4 neuronal cell death.

Aside from their deleterious effect, reactive oxygen species (ROS) can function as small messenger molecules during physiologic processes. ROS have been shown to activate the transcription nuclear factor kappa B (NFkappaB) and activator protein 1 (AP-1). Exposure of HT4 neuronal cells to 10 mM glutamate results in cell death after 12 h. Here we show that glutamate treatment leads to an increase in ROS production and activation of AP-1, but not NFkappaB. 12-O-Tetradecanoylphorbol 13-acetate (TPA), an activator of protein kinase C and an inducer of NFkappaB and AP-1, protected the cells. This protective effect was preceded by increased production of ROS compared with glutamate alone, which was accompanied by a synergistic increase in AP-1, but not NFkappaB activity. We used all-trans-retinoic acid (ATRA), overexpression of retinoic acid receptor alpha (RARalpha) and a decoy oligonucleotide inclusion assay to suppress AP-1 activity. NFkappaB was inhibited by using a super suppressor (IkappaBalphaDeltaN-transfected cells). Inhibition of AP-1, but not NFkappaB resulted in increased cellular vulnerability to glutamate. Inhibition of AP-1 activity was coincident with a decrease in ROS production. Thus, although ROS are significant to the cell-death effect induced by glutamate, they also activate protective pathways mediated by increasing AP-1 activity, and not that of NFkappaB.

Animals↗